ICRF heating and profile control techniques in TFTR

被引:23
|
作者
Phillips, CK
Bell, MG
Bell, RE
Bernabei, S
Bettenhausen, M
Bush, CE
Clark, D
Darrow, DS
Fredrickson, ED
Hanson, GR
Hosea, JC
LeBlanc, BP
Majeski, RP
Medley, SS
Nazikian, R
Ono, M
Park, HK
Petrov, MP
Rogers, JH
Schilling, G
Skinner, CH
Smithe, DN
Synakowski, EJ
Taylor, G
Wilson, JR
机构
[1] Princeton Univ, Princeton Plasma Phys Lab, Princeton, NJ 08543 USA
[2] Mission Res Corp, Newington, VA USA
[3] Oak Ridge Natl Lab, Oak Ridge, TN USA
[4] AF Ioffe Phys Tech Inst, St Petersburg 194021, Russia
关键词
D O I
10.1088/0029-5515/40/3Y/304
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
In fast wave to ion Bernstein wave made conversion experiments in DT supershot plasmas, localized efficient ion heating rather than electron heating was observed, which was due to Doppler broadened tritium cyclotron resonance overlap into the mode conversion region. The ion temperature heat pulse associated with RF power modulation in this regime could provide a diagnostic tool for measuring the local ion thermal conductivity in various confinement regimes. In direct launch ion Bernstein wave heating experiments, core power coupling was limited by the excitation of parasitic edge modes. However, a sheared poloidal flow was observed that is consistent in both magnitude and direction with theoretical models based on RF driven Reynolds stress. With the modest power coupled to the core (similar to 360 kW), the magnitude of the shear in the observed flow was estimated to be a factor of 3-4 too low to trigger transport barrier formation through localized shear suppression of turbulence.
引用
收藏
页码:461 / 466
页数:6
相关论文
共 50 条
  • [41] ICRF heating scenarios for the IGNITOR machine
    Riccitelli, M
    Vecchi, G
    Maggiora, R
    Phillips, CK
    Majeski, RP
    Wilson, JR
    Smithe, DN
    FUSION ENGINEERING AND DESIGN, 1999, 45 (01) : 1 - 13
  • [42] ICRF heating analysis on ASDEX plasmas
    Itoh, Sanae-I.
    Itoh, Kimitaka
    Fukuyama, Atsushi
    Morishita, Takayuki
    Steinmetz, Karl
    Noterdaeme, Jean-M.
    Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers, 1988, 27 (10): : 1947 - 1959
  • [43] ELM moderation with ICRF heating on JET
    Maddison, GP
    Snipes, JA
    Chareau, JM
    Conway, GD
    Hutchinson, IH
    Ingesson, LC
    Koslowski, HR
    Loarte, A
    Lomas, PJ
    Mantsinen, MJ
    Matthews, GF
    Meneses, L
    Nave, MFF
    Righi, E
    Saibene, G
    Sartori, R
    Sauter, O
    Zastrow, KD
    PLASMA PHYSICS AND CONTROLLED FUSION, 2002, 44 (09) : 1937 - 1952
  • [44] EFFECT OF ION LOSS ON ICRF HEATING
    ITOH, K
    ITOH, SI
    FUKUYAMA, A
    NUCLEAR FUSION, 1988, 28 (05) : 779 - 787
  • [45] Power Compensation for ICRF Heating in EAST
    陈根
    秦成明
    毛玉周
    赵燕平
    袁帅
    张新军
    Plasma Science and Technology, 2016, 18 (08) : 870 - 874
  • [46] ION HEATING BY ICRF IN MACROTOR TOKAMAK
    WHELAN, D
    MORALES, GJ
    TAYLOR, RJ
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1978, 23 (07): : 836 - 836
  • [47] NEUTRAL BEAM HEATING-SYSTEM FOR TFTR
    WILLIAMS, MD
    EUBANK, HP
    GRISHAM, LR
    KAMPERSCHROER, JH
    KUGEL, HW
    MARTIN, GD
    OCONNOR, T
    PRECHTER, RE
    PRICHARD, BA
    VONHALLE, A
    WINJE, RA
    WRIGHT, KE
    FUSION TECHNOLOGY, 1985, 8 (01): : 800 - 803
  • [48] PRELIMINARY ICRF HEATING EXPERIMENTS ON PLT
    HOSEA, JC
    COLESTOCK, PL
    HWANG, D
    JOBES, FC
    TAKAHASHI, H
    THOMPSON, HR
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1978, 23 (07): : 836 - 836
  • [49] CHARACTERISTICS OF WAVES IN PLASMAS AND ICRF HEATING
    Kumazawa, Ryuhei
    FUSION SCIENCE AND TECHNOLOGY, 2014, 65 (01) : 43 - 53
  • [50] Analytic theory of ICRF minority heating
    Ye, H.
    Kaufman, A.N.
    AIP Conference Proceedings, 1989, 190